Bäurle Isabel, Laux Thomas
Institute of Biology III, Freiburg University, D-79104 Freiburg, Germany.
Plant Cell. 2005 Aug;17(8):2271-80. doi: 10.1105/tpc.105.032623. Epub 2005 Jun 24.
Pluripotent stem cells are localized in specialized microenvironments, called stem cell niches, where signals from surrounding cells maintain their undifferentiated status. In the Arabidopsis thaliana shoot meristem, the homeobox gene WUSCHEL (WUS) is expressed in the organizing center underneath the stem cells and integrates regulatory information from several pathways to define the boundaries of the stem cell niche. To investigate how these boundaries are precisely maintained within the proliferating cellular context of the shoot meristem, we analyzed the transcriptional control of the WUS gene. Our results show that the WUS promoter contains distinct regulatory regions that control tissue specificity and levels of transcription in a combinatorial manner. However, a 57-bp regulatory region is all that is required to control the boundaries of WUS transcription in the shoot meristem stem cell niche, and this activity can be further assigned to two adjacent short sequence motifs within this region. Our results indicate that the diverse regulatory pathways that control the stem cells in the shoot meristem converge at these two short sequence elements of the WUS promoter, suggesting that the integration of regulatory signals takes place at the level of a central transactivating complex.
多能干细胞定位于称为干细胞龛的特殊微环境中,周围细胞发出的信号在那里维持它们的未分化状态。在拟南芥茎尖分生组织中,同源异型框基因WUSCHEL(WUS)在干细胞下方的组织中心表达,并整合来自多个途径的调控信息以界定干细胞龛的边界。为了研究在茎尖分生组织增殖的细胞环境中这些边界是如何精确维持的,我们分析了WUS基因的转录调控。我们的结果表明,WUS启动子包含不同的调控区域,这些区域以组合方式控制组织特异性和转录水平。然而,一个57bp的调控区域就足以控制茎尖分生组织干细胞龛中WUS转录的边界,并且这种活性可以进一步归因于该区域内两个相邻的短序列基序。我们的结果表明,控制茎尖分生组织中干细胞的多种调控途径在WUS启动子的这两个短序列元件处汇聚,这表明调控信号的整合发生在一个中央反式激活复合物水平。